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PMID: 25176578 已发表 · ppublish 英语

Targeted and heat-triggered doxorubicin delivery to tumors by dual targeted cationic thermosensitive liposomes.

Dicheva Bilyana M, ten Hagen Timo L M, Schipper Debby, Seynhaeve Ann L B, van Rhoon Gerard C, Eggermont Alexander M M, Koning Gerben A

摘要

Liposomal nanoparticles can circumvent toxicity of encapsulated chemotherapeutic drugs, but fall short in tumor-specific and efficient intracellular drug delivery. To overcome these shortcomings, we designed a multifunctional dual targeted, heat-responsive nanocarrier encapsulating doxorubicin (Dox) as a chemotherapeutic content. Dox-loaded cationic thermosensitive liposomes (Dox-CTSL) carry targeting functions addressing tumor cells and tumor vasculature and have a heat-responsive lipid bilayer. Targeted Dox-CTSL demonstrated superior uptake by and toxicity to different tumor cell lines and endothelial cells compared to non-targeted TSL. Heat triggered intracellular Dox release in acidic cell compartments was visualized as fluorescent Dox nanobursts by live cell confocal microscopy. In vivo, using high resolution intravital microscopy, we demonstrated that Dox-CTSL upon an external heat-trigger delivered 3-fold higher Dox quantity to tumors than TSL. Dox-CTSL bound specifically to tumor vasculature, which in combination with the heat-triggered drug release caused significant tumor vessel damage, which was not observed when non-targeted TSL were administered. Therefore, Dox-CTSL have strong potency to increase drug efficacy due to targeted delivery and heat-triggered drug release in tumors.

关键词
Cancer chemotherapy Cationic thermosensitive liposomes Cytotoxicity Hyperthermia Triggered drug release
文献信息
期刊
Journal of controlled release : official journal of the Controlled Release Society
期刊简称
J Control Release
发表日期
2015-08-10
收录日期
2014-12-02
更新日期
2015-11-19
语言
英语
国家/地区
Netherlands
NLM ID
8607908
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